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PMID: 18701680 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Constitutively active Rap2 transgenic mice display fewer dendritic spines, reduced extracellular signal-regulated kinase signaling, enhanced long-term depression, and impaired spatial learning and fear extinction.

Ryu J, Futai K, Feliu M, Weinberg R, Sheng M

Abstract

Within the Ras superfamily of GTPases, Rap1 and Rap2 are the closest homologs to Ras. In non-neural cells, Rap signaling can antagonize Ras signaling. In neurons, Rap also seems to oppose Ras in terms of synaptic function. Whereas Ras is critical for long-term potentiation (LTP), Rap1 has been shown to be required for long-term depression (LTD), and Rap2 has been implicated in depotentiation. Moreover, active Rap1 and Rap2 cause loss of surface AMPA receptors and reduced miniature EPSC amplitude and frequency in cultured neurons. The role of Rap signaling in vivo, however, remains poorly understood. To study the function of Rap2 in the brain and in behavior, we created transgenic mice expressing either constitutively active (Rap2V12) or dominant-negative (Rap2N17) mutants of Rap2 in postnatal forebrain. Multiple lines of Rap2N17 mice showed only weak expression of the transgenic protein, and no phenotype was observed. Rap2V12 mice displayed fewer and shorter dendritic spines in CA1 hippocampal neurons, and enhanced LTD at CA3-CA1 synapses. Behaviorally, Rap2V12 mice showed impaired spatial learning and defective extinction of contextual fear, which correlated with reduced basal phosphorylation of extracellular signal-regulated kinase (ERK) and blunted activation of ERK during fear extinction training. Our data support the idea that Rap2 opposes Ras-ERK signaling in the brain, thereby inhibiting dendritic spine development/maintenance, promoting synaptic depression rather than LTP, and impairing learning. The findings also implicate Rap2 signaling in fear extinction mechanisms, which are thought to be aberrant in anxiety disorders and posttraumatic stress disorder.

MeSH Terms
Animals Dendritic Spines/pathology,physiology Extinction, Psychological/physiology Extracellular Signal-Regulated MAP Kinases/genetics,physiology Fear/physiology,psychology Long-Term Synaptic Depression/genetics MAP Kinase Signaling System/genetics Maze Learning/physiology Mice Mice, Inbred C57BL Mice, Transgenic Neural Inhibition/genetics Spatial Behavior/physiology Synaptic Transmission/genetics rap GTP-Binding Proteins/genetics,physiology
Chemicals
Extracellular Signal-Regulated MAP Kinases Rap2a protein, mouse rap GTP-Binding Proteins
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Ryu Jubin
The Picower Institute for Learning and Memory, RIKEN-Massachusetts Institute of Technology Neuroscience Research Center, Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Futai Kensuke
Feliu Monica
Weinberg Richard
Sheng Morgan
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Article Info
Journal
The Journal of neuroscience : the official journal of the Society for Neuroscience
Abbr.
J Neurosci
ISSN
1529-2401
Published
2008-08-13
Pages
8178-88
Language
English
Region
United States
NLM ID
8102140
PMCID
PMC2665130
Subset
IM
Grants
NINDS NIH HHS · R01 NS035527-08A1 · United States
Howard Hughes Medical Institute · United States
NINDS NIH HHS · R01 NS035527-09 · United States
NINDS NIH HHS · R01 NS035527 · United States
NINDS NIH HHS · R01 NS039444 · United States
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